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May 9, 20260 citationsOpen Access

Spyder: Teleportation-Based Quantum Routing in a Primordial Qubit Network with Synthetic Photons and Plasma Buffering

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DVDenise VenerableGXGrok xAIGDGemini Google DeepMind

Key Points

  • The aim is to present a hybrid framework for quantum routing using teleportation and integrate various advanced technologies.
  • Utilized mobile spin qubits and neutral-atom qubits for teleportation-based routing.
  • Incorporated synthetic photon channels through giant-atom and waveguide lattices.
  • Emphasized using localized orbital angular momentum (OAM) plasma buffers to mitigate decoherence.
  • Proposed framework indicates potential for enhancing quantum routing efficiency.
  • Identified advancements in spin qubit shuttling and teleportation techniques can support implementation by 2026.
  • Demonstrated how OAM modes in plasmas can aid in quantum information transfer.

Abstract

This preprint presents Spyder, a hybrid teleportation-based quantum routing framework that integrates mobile spin or neutral-atom qubits, synthetic photon channels via giant-atom or waveguide lattices, and localized OAM plasma buffers for decoherence mitigation. It builds directly on the Matter–Light–Buffer Trinity and emphasizes near-term experimental feasibility, drawing on 2024–2026 advances in mobile spin qubit shuttling and teleportation (Matsumoto et al.), orbital angular momentum (OAM) modes in dusty plasmas (Chen et al.), and entropy-slope metrology for validation (Jansen et al.). Intended as a conceptual engineering roadmap and discussion piece for researchers working at the intersection of quantum information science, spin-qubit hardware, and plasma physics.

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Cite This Study

Venerable et al. (2026) studied this question.

synapsesocial.com/papers/69fed17eb9154b0b82878df6https://doi.org/10.5281/zenodo.20076106
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